像一台微调精准的机车,你的性命与轻触转向装置紧紧相连。
Like a finely tuned precision automobile, your life stays on course with the slightest touch of steering.
同机车转向架一样,客车转向架也是四轮或六轮的转向架,利用枢轴支撑车箱的顶部,使之可以自由转动。
As with the locomotive bogie, the coach bogie is a four - wheel or six-wheel truck supporting the coach-end thorough the medium of a pivot.
液压装置完成称重轨的垂向调节,同时可模拟机车车体对转向架进行加载。
Hydraulics device is applied to controlling the weighting track and simulation the weight of locomotive body loaded on the bogie.
对电机采用轮对空心轴转向架悬挂的C0 - C0轴式机车的轴重转移进行了理论分析及计算。
Theoretical analysis and calculations are done to the axle weight transfer of C0-C0 locomotive with bogie-mounted and quill drived motor.
熟悉铁路机械金属工艺,如车钩、缓冲器、车体、转向架等铁路机车车辆设备的生产、制造与检修。
Familiar with railway mechanical metal process, such as production, manufacture and repair of the coupler, buffer, car-body, bogies and other railway equipments.
机车转向架横向弹性连接装置是减少轮缘磨耗的主要措施。
Lateral elastic coupling device of the locomotive bogie is a main provision of decreasing wheel flange wear.
阐述了机车重心的计算方法,介绍了如何采用四支点法测定和求得簧上总成重心、转向架总质量重心以及机车的实际重心。
The calculation method of CG of locomotive is depicted. Then it is introduced how to determine and obtain secondary sprung CG, bogie mass CG and actual locomotive CG by four pivot point method.
详细介绍了HXD1型大功率交流传动机车转向架轮对驱动系统的结构、技术特点及性能,对机车车辆转向架驱动装置的开发设计提供较好的借鉴。
The structure, technology characteristic and performance of wheel set drive system of bogie on type HXD1 high-power ac drive locomotive are presented detailedly.
维护、测试及维修柴油发动机以及卡车、巴士以及其他重型机车的机械零件,诸如变速箱、悬架、转向和刹车等零部件。
Maintains, tests and repairs diesel motors and the mechanical parts of trucks, buses and other heavy vehicles such as transmissions, suspension, steering and brakes.
转向架采用弹性定位之后,优化的悬挂设计可以使机车车辆达到很高的稳定性临界速度;
The optimized suspension design can make the rolling stock achieve high critical stability speed after the elastic location being adopted for the bogie.
本实用新型涉及一种货车转向架吊具,属机车制造装备技术领域。
The utility model relates to a van bogie hanger, which belongs to the technical field of locomotive manufacturing equipment. The structure of the van bogie hanger comprises a cross beam;
基于这种方法,以SS_(7E)型电力机车转向架构架箱型变截面侧梁为应用对象,创建了有限元求解模型。
This calculating technique then attempts to be applied to the box-shape-section lateral beam in the bogie's frame of SS7E electro-locomotive in order to obtain the FEM calculating results.
基于这种方法,以SS_(7E)型电力机车转向架构架箱型变截面侧梁为应用对象,创建了有限元求解模型。
This calculating technique then attempts to be applied to the box-shape-section lateral beam in the bogie's frame of SS7E electro-locomotive in order to obtain the FEM calculating results.
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